Large pottery jar cleaning production line

By designing a large-scale ceramic jar cleaning production line, and utilizing omnidirectional water jets and suction components, the problem of incomplete cleaning of large ceramic jars has been solved, achieving a highly efficient and thorough cleaning effect that is suitable for complex wine storage environments.

CN223491635UActive Publication Date: 2025-10-31SHANGHAI JINFENG WINE IND
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Patent Information

Application Number
CN202422706208.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-10-31
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

Cleaning large ceramic jars is difficult, incomplete, time-consuming, and labor-intensive. Traditional cleaning equipment is ill-suited to the complex environment of wine cellars, resulting in low cleaning efficiency.

Method used

A large-scale ceramic jar cleaning production line was designed, which adopts a first spray component and a suction component with an all-round water jet, combined with a rocker arm component, to achieve thorough cleaning of the inside of the ceramic jars and timely discharge of wastewater through the suction component.

Benefits of technology

It enables thorough cleaning of large ceramic jars, improving cleaning efficiency and effectiveness, adapting to the complex storage environment in wine cellars, and reducing labor intensity and time costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cleaning, in particular to a large pottery jar cleaning production line. The production line comprises a cleaning device. The cleaning device comprises a cleaning support, and the cleaning support is provided with a first spraying assembly used for cleaning the interior of the large pottery jar and a sewage suction assembly used for discharging sewage in the large pottery jar. The first spraying assembly comprises a first spraying piece and a first driving source; the first driving source is connected with the first spraying piece and drives the first spraying piece to rotate and / or move up and down; the dirt suction assembly comprises a dirt suction part and a second driving source, and the second driving source is connected with the dirt suction part and drives the dirt suction part to move up and down. According to the production line, jet water beams are output in all directions through the first jet part, sewage is sucked out in time through the sewage suction part, dead-corner-free cleaning of the interior of the large pottery jar is achieved, and the cleaning efficiency and effect are effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of wine vessel cleaning technology, and in particular to a large-scale ceramic jar cleaning production line. Background Technology

[0002] Earthenware jars are a traditional method of producing Shaoxing wine. The wine undergoes slow changes through the microporous structure of the jar, gradually maturing and developing aroma, making the earthenware jar an important container in Shaoxing wine production. 500L earthenware jars offer advantages such as large capacity, relatively small footprint, and low labor intensity. Their use in conjunction with traditional smaller jars can improve storage efficiency and save costs. However, 500L earthenware jars are heavy, bulky, and difficult to move, making them challenging to clean. Traditional scrubbing methods are not only time-consuming and labor-intensive but also prone to creating blind spots, resulting in incomplete cleaning. Even with the addition of backwashing with clean water, insufficient impact force from the cleaning nozzles and the technical limitations of flexible steering still hinder effective cleaning. Furthermore, large earthenware jars are densely packed in storage rooms, with the passage width between adjacent rows of large jars less than 0.7m. This necessitates a washing device that can move flexibly and adapt to the complex storage environment to ensure smooth and efficient cleaning operations.

[0003] In conclusion, how to clean large ceramic jars effectively and environmentally is an urgent problem that needs to be solved. Utility Model Content

[0004] To address the shortcomings of the existing technology, this utility model provides a large ceramic jar cleaning production line. The production line uses a first spray component to output water jets from all directions, and a suction component to promptly remove the cleaning wastewater, achieving thorough cleaning of the interior of the large ceramic jars without any blind spots, effectively improving cleaning efficiency and results.

[0005] The present invention provides a large ceramic jar production line, the production line including a cleaning device; the cleaning device including a cleaning support, the cleaning support being provided with a first spraying component for cleaning the interior of the large ceramic jar and a suction component for draining wastewater from the interior of the large ceramic jar; the first spraying component including a first spraying element and a first driving source; the first driving source being connected to the first spraying element and driving the first spraying element to rotate and / or move up and down; the suction component including a suction element and a second driving source, the second driving source being connected to the suction element and driving the suction element to move up and down.

[0006] In one specific embodiment, the cleaning bracket is further provided with a second spraying component for cleaning the exterior of a large ceramic jar, and the inlet of the second spraying component is in fluid communication with an external water source.

[0007] In one specific embodiment, the first spraying element includes a three-dimensional nozzle.

[0008] In one specific embodiment, the first driving source includes a first rotary driving component and / or a first vertical moving driving component; the first rotary driving component is connected to the first spray member to drive the first spray member to rotate; the first rotary driving component is disposed on the first vertical moving driving component to drive the first rotary driving component to move up and down.

[0009] In one specific embodiment, the first spray assembly further includes a rotary joint, which is in fluid communication with the inlet of the first spray element.

[0010] In one specific embodiment, the first spraying element is a spraying rod, and the length of the spraying rod is 0.5 to 1 m.

[0011] In one specific embodiment, one end of the suction device is provided with a one-way valve, and the other end is used for sewage discharge.

[0012] In a more specific embodiment, the cleaning device further includes a waterproof cover that matches the ceramic jar.

[0013] In a more specific embodiment, the second spray element includes a 0-degree linear nozzle.

[0014] In a more specific embodiment, the first vertical movement drive assembly includes one or more of a manual lifting assembly, an electric lifting assembly, and a pneumatic lifting assembly.

[0015] In a more specific embodiment, the second drive source includes one or more of a manual lifting assembly, an electric lifting assembly, and a pneumatic lifting assembly.

[0016] In a further specific embodiment, the waterproof cover is provided in a through hole for the suction element to pass through.

[0017] In a further specific embodiment, the first spraying element penetrates the waterproof cover and is fixedly connected to the waterproof cover.

[0018] In a more specific embodiment, the cleaning device further includes a suction drive source and a suction pipe, the suction drive source acting on the suction pipe, the suction pipe being in fluid communication with the outlet of the suction component.

[0019] In a more specific embodiment, the cleaning apparatus further includes a suction and filtration device in fluid communication with the suction pipe.

[0020] In one specific embodiment, the cleaning bracket is further provided with a rocker arm assembly, which is fixedly connected to the first spray assembly to drive the first spray assembly to move.

[0021] In a more specific embodiment, the rocker arm assembly includes a rocker arm portion and a support portion for supporting the rocker arm portion.

[0022] In a more specific embodiment, the support portion includes a fixed portion and a rotating portion that are movably connected. The fixed portion is used to be fixedly connected to the cleaning bracket, and the rotating portion is a self-rotating rotating portion. The rotating portion is fixedly connected to the rocker arm portion to drive the rocker arm portion to rotate.

[0023] In a more specific embodiment, the rocker arm includes a fixed arm, a telescopic arm, and a telescopic arm drive source. The fixed arm is sleeved outside the telescopic arm. The telescopic arm drive source acts on one end of the telescopic arm and is connected to the telescopic arm drive source. The other end is connected to the first spray assembly to drive the first spray assembly to extend and retract.

[0024] In one specific embodiment, the production line further includes a water inlet device for supplying water to the cleaning device. The water inlet device includes a water inlet bracket, and the water inlet bracket is provided with an external water source drive.

[0025] In a more specific embodiment, the water inlet bracket is further provided with a filter device for filtering an external water source, the filter device being positioned in front of the external water source drive source.

[0026] In a more specific embodiment, the bottom of the cleaning bracket and / or the water inlet bracket is provided with a number of guide wheels and / or casters.

[0027] In a further specific embodiment, the production line further includes the water inlet pipe, the filter device and the external water source drive source are sequentially disposed on the water inlet pipe; the water outlet of the water inlet pipe is fluidly connected to the water inlet of the first spray member and / or the water inlet of the second spray member.

[0028] As described above, the large-scale ceramic jar production line of this utility model has the following beneficial effects:

[0029] 1) The production line of this utility model includes a first spraying component, which outputs spray water jets in all directions to achieve thorough cleaning of the interior of large ceramic jars.

[0030] 2) The production line of this utility model includes a suction component, which can move up and down to the bottom of a large ceramic jar to realize the timely discharge of wastewater generated during cleaning.

[0031] 3) The production line of this utility model includes a rocker arm assembly, which controls the movement of the first spraying assembly. It can be adapted to application scenarios where large ceramic jars are densely arranged in a wine storage cellar and the passage width between two adjacent rows of large ceramic jars is small. Attached Figure Description

[0032] Figure 1 This is a cross-sectional view of the large ceramic jar cleaning production line of this utility model.

[0033] Figure 2 This is a partial enlarged view of the first spraying component and the suction component of this utility model.

[0034] Figure 3 This is a top view schematic diagram showing the relative positions of a large ceramic jar and the cleaning production line described in this utility model.

[0035] Explanation of reference numerals in the attached figures

[0036] 10 Cleaning bracket, 11 First spray assembly, 111 First spray element, 1111 Three-dimensional nozzle, 112 First rotary drive assembly, 113 First up-and-down movement drive assembly, 12 Second spray element, 13 Suction assembly, 131 Second drive source, 132 Suction element, 1321 One-way valve, 133 Suction drive source, 134 Suction filter device, 14 Waterproof cover, 15 Support part, 151 Fixing part, 152 Rotating part, 16 Rocker arm part, 161 Fixed arm, 162 Telescopic arm, 163 Telescopic arm drive source, 17 Suction pipe, 18 Guide rod, 20 Water inlet bracket, 21 External water source drive source, 22 External water source filter device, 23 Water inlet pipe, 3 Control box, 4 T-junction, 5 Electrical box. Detailed Implementation

[0037] The following specific embodiments illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification.

[0038] Please see Figures 1-3It should be understood that the structures, proportions, sizes, etc., illustrated in the accompanying drawings are merely for illustrative purposes to aid those skilled in the art and are not intended to limit the scope of this invention. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effectiveness and purpose of this invention, should still fall within the scope of the disclosed technical content. Furthermore, the terms "upper," "lower," "left," "right," "middle," and "one" used in this specification are merely for clarity and not intended to limit the scope of this invention. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of this invention.

[0039] This utility model discloses a large-scale ceramic jar cleaning production line, such as Figures 1-2 As shown, the production line includes a cleaning device; the cleaning device includes a cleaning support 10, on which a first spray assembly 11 for cleaning the interior of a large ceramic jar and a suction assembly 13 for draining wastewater from the interior of the large ceramic jar are mounted; the first spray assembly 11 includes a first spray element 111 and a first drive source; the first drive source is connected to the first spray element 111 and drives the first spray element 111 to rotate and / or move up and down; the suction assembly 13 includes a suction element 132 and a second drive source 131, the second drive source 131 is connected to the suction element 132 and drives the suction element 132 to move up and down. The production line uses the first spray element 111 to output a jet of water from all directions, and the suction element 132 to promptly suck up the wastewater, achieving thorough cleaning of the interior of the large ceramic jar without any blind spots, effectively improving cleaning efficiency and results.

[0040] In a specific embodiment, such as Figure 2 As shown, the first spraying element 111 includes a three-dimensional nozzle 1111. Further, as... Figure 2 As shown, the three-dimensional nozzle 1111 is located at the cleaning end of the first spraying component 111. The three-dimensional nozzle 1111 has nozzles set at different angles inside, which can form a three-dimensional surrounding cleaning range, realizing comprehensive cleaning of the interior of large ceramic jars without dead angles.

[0041] In a specific embodiment, such as Figure 1As shown, the first driving source includes a first rotary driving component 112 and / or a first vertical moving driving component 113; the first rotary driving component 112 is connected to the first spray member 111 to drive the first spray member 111 to rotate; the first rotary driving component 112 is mounted on the first vertical moving driving component 113 to drive the first rotary driving component 112 to move vertically. The first rotary driving component 112 and the first vertical moving driving component 113 drive the first spray member 111 to rotate while moving vertically, enabling the first spray member 111 to output water jets from all directions to achieve thorough cleaning of the interior of the ceramic jar.

[0042] In a specific embodiment, such as Figure 1 As shown, the first spray assembly 11 also includes a rotary joint, which is in fluid communication with the water inlet of the first spray element 111. The water inlet of the rotary joint is in fluid communication with an external water source, and the water outlet of the rotary joint is in fluid communication with the water inlet of the first spray element 111. Thus, when an external water source enters the first spray assembly 11 through the rotary joint to spray and clean the inside of a large ceramic jar, the rotary joint fixes the inlet of the external water source, preventing it from rotating with the rotation of the first spray element 111, thereby achieving a stable water input.

[0043] In a specific embodiment, such as Figures 1-2 As shown, the first spraying component 111 is a spraying rod, and the length of the spraying rod is 0.5 to 1 m. In a specific example... Figures 1-2 In the specific embodiment shown, the length of the spray rod is 0.7m, so that the cleaning end of the spray rod can extend into the center of the large ceramic jar, thereby achieving a comprehensive and uniform cleaning of the inside of the ceramic jar.

[0044] And / or, one end of the suction component 132 is equipped with a one-way valve 1321, and the other end is used for sewage discharge. The one-way valve 1321 can prevent cleaning wastewater from flowing back into the ceramic jar due to gravity, thereby improving cleaning efficiency and effectiveness.

[0045] In a specific embodiment, such as Figure 1 As shown, the cleaning bracket 10 is also provided with a second spraying component 12 for cleaning the exterior of the large ceramic jar, and the water inlet of the second spraying component 12 is in fluid communication with an external water source.

[0046] In a more specific embodiment, such as Figures 1-2 As shown, the second spraying element 12 includes a 0-degree linear nozzle. Further, the second spraying element 12 is a spray gun, and the nozzle of the spray gun is a 0-degree linear nozzle. The 0-degree linear nozzle allows for a stronger cleaning force in the sprayed water jet, and the spray gun is easier for cleaning personnel to hold.

[0047] In a more specific embodiment, such as Figures 1-2 As shown, the cleaning device also includes a waterproof cover 14 that matches the ceramic jar. The waterproof cover 14 prevents the water jets from splashing out during the cleaning process, ensuring a clean cleaning environment.

[0048] In a more specific embodiment, such as Figures 1-2 As shown, the first vertical movement drive assembly 113 includes one or more of a manual lifting assembly, an electric lifting assembly, and a pneumatic lifting assembly. In a... Figures 1-2 In the specific embodiment shown, the first up-and-down movement drive component 113 is a pneumatic lifting component.

[0049] In a more specific embodiment, such as Figures 1-2 As shown, the first rotary drive assembly 112 is a gear rotary assembly. The first rotary drive assembly 112 enables the first injection element 111 to rotate.

[0050] In a more specific embodiment, such as Figures 1-2 As shown, the second drive source 131 includes one or more of a manual lifting assembly, an electric lifting assembly, and a pneumatic lifting assembly. In a... Figures 1-2 In the specific embodiment shown, the second drive source 131 is a pneumatic lifting assembly. The second drive source 131 allows the suction component 132 to extend to the bottom of the ceramic jar, maximizing the suction of cleaning wastewater. Furthermore, the stroke length of the suction component 132 driven by the second drive source 131 is 0.5 to 1 m.

[0051] In a more specific embodiment, such as Figures 1-2 As shown, the waterproof cover 14 is provided in a through hole for the suction component 132 to pass through.

[0052] In a more specific embodiment, such as Figures 1-2 As shown, the first spraying element 111 is disposed through the waterproof cover 14, and the first spraying element 111 is fixedly connected to the waterproof cover 14.

[0053] In a like Figures 1-2 In the specific embodiment shown, the first spraying element 111 and the suction assembly 13 penetrate the waterproof cover 14 and are fixedly connected to the waterproof cover 14. The first up-and-down moving drive assembly 113 is disposed on the waterproof cover 14 to drive the first spraying element 111 and the suction assembly 13 to move up and down synchronously. Because the up-and-down movement of the first spraying element 111 is relatively long, in a... Figures 1-2In the specific embodiment described, the cleaning bracket 10 is further provided with a guide rod 18, which is fixedly connected to the waterproof cover 14 so that the waterproof cover will not rotate and the first spraying component 111 will not be deformed.

[0054] In a like Figure 1 In the specific embodiment shown, the cleaning device further includes a suction drive source 133 and a suction pipe 17. The suction drive source 133 acts on the suction pipe 17, and the suction pipe 17 is in fluid communication with the outlet of the suction component 13. In a more specific embodiment, such as Figure 1 As shown, the suction drive source 133 is a pneumatic diaphragm sewage pump.

[0055] In a like Figure 1 In the specific embodiment shown, the cleaning device further includes a suction and filtration device 134, which is in fluid communication with the suction pipe 17.

[0056] In a more specific embodiment, such as Figure 1 As shown, one end of the suction pipe 17 is in fluid communication with the outlet of the suction component 13, and the other end is used for sewage discharge. The suction filter device 134 and the suction drive source 133 are sequentially arranged on the suction pipe 17.

[0057] In a specific embodiment, such as Figure 1 As shown, the cleaning bracket 10 is also equipped with a rocker arm assembly, which is fixedly connected to the first spray assembly 11 to drive the first spray assembly 11 to move. The rocker arm assembly allows the first spray assembly 11 to be moved above different ceramic jars, and the cleaning device can be switched to clean different ceramic jars without moving the cleaning device.

[0058] In a more specific embodiment, such as Figure 1 As shown, the rocker arm assembly includes a rocker arm portion 16 and a support portion 15 for supporting the rocker arm portion 16. The support portion 15 includes a fixed portion 151 and a rotating portion 152 that are movably connected. The fixed portion 151 is fixedly connected to the cleaning bracket 10, and the rotating portion 152 is a self-rotating portion. The rotating portion 152 is fixedly connected to the rocker arm portion 16 to drive the rocker arm portion 16 to rotate. The rotating rocker arm portion 16 drives the first spray assembly 11 to rotate.

[0059] In a more specific embodiment, such as Figure 1As shown, the rocker arm 16 includes a fixed arm 161, a telescopic arm 162, and a telescopic arm drive source 163. The fixed arm 161 is sleeved on the telescopic arm 162. The telescopic arm drive source 163 acts on one end of the telescopic arm 162 and the other end is connected to the first spray assembly 11 to drive the first spray assembly 11 to extend and retract.

[0060] In a specific embodiment, such as Figure 1 As shown, the production line also includes a water inlet device for supplying water to the cleaning device. The water inlet device includes a water inlet bracket 20, on which an external water source drive source 21 is mounted. In a... Figure 1 In the specific embodiment shown, the external water source drive 21 is a high-pressure water pump. The external water source drive 21 pressurizes the external water source, and the high-pressure water jet obtained after pressurization uses high impact kinetic energy to easily remove dirt.

[0061] In a more specific embodiment, such as Figure 1 As shown, the water inlet bracket 20 is also equipped with an external water source filter device 22 for filtering external water sources. The external water source filter device 22 is positioned in front of the external water source drive source 21. The external water source filter device 22 makes the water jets flowing into the first spray member 111 and the second spray member 12 cleaner, preventing external water from contaminating the ceramic jar, and further improving the cleaning effect and cleaning efficiency.

[0062] In a more specific embodiment, such as Figure 1 As shown, the bottom of the cleaning bracket 10 and / or the water inlet bracket 20 is provided with several guide wheels and / or casters. In a... Figure 1 In the specific embodiment shown, both the cleaning bracket 10 and the water inlet bracket 20 are equipped with guide wheels and casters at their bottoms, so that the positions of the cleaning bracket 10 and the water inlet bracket 20 can be adjusted according to changes in the actual application scenario, which is suitable for situations where wineries have complex storage environments and large storage areas.

[0063] In a more specific embodiment, such as Figure 1 As shown, the production line also includes the water inlet pipe 23, the external water source filtration device 22 and the external water source drive source 21 are sequentially arranged on the water inlet pipe 23; the water outlet of the water inlet pipe 23 is fluidly connected to the water inlet of the first spray member 111 and / or the water inlet of the second spray member 12.

[0064] In a more specific embodiment, such as Figure 1 As shown, the large ceramic jar cleaning production line also includes a control box 3 for controlling the first drive source, the second drive source 131 and the telescopic arm drive source 163.

[0065] In a more specific embodiment, such as Figure 1 As shown, the large ceramic jar cleaning production line also includes an electrical box 5 for supplying power to the control box.

[0066] In a more specific embodiment, such as Figure 1 As shown, the water inlet pipe 23 is also provided with a tee 4, which diverts the water jet entering the water inlet pipe 23 to the first spray member 111 and the second spray member 12.

[0067] In a more specific embodiment, such as Figure 1 As shown, the cleaning bracket 10 is also provided with a hose reel for storing the water inlet pipe 23, so that when the cleaning bracket 10 and the water inlet bracket 20 are adjusted, the length of the water inlet pipe 23 between them can be adjusted accordingly.

[0068] In a specific example Figures 1-3In the specific embodiment shown, large ceramic jars are closely arranged. The operation process of the cleaning production line includes: pushing the cleaning bracket 10 and the water inlet bracket 20 to a suitable position according to the actual application scenario; rotating the rotating part 152 so that the axis of the ceramic jar to be cleaned coincides with the extension line of the rocker arm 16; setting the control box 3 to control the telescopic arm drive source 163 so that the telescopic arm 162 drives the first drive assembly 11 to extend and retract to directly above the ceramic jar to be cleaned; the first spraying element 111 and the suction assembly 13 penetrate the waterproof cover 14 and are connected to the waterproof cover 152. The water cover 14 is fixedly connected, and the first up-and-down moving drive assembly 113 is disposed on the waterproof cover 14 to drive the first spray component 111 and the suction assembly 13 to move up and down synchronously; the cleaning bracket 10 is also provided with a guide rod 18, which is fixedly connected to the waterproof cover 14 to prevent the waterproof cover from rotating and to prevent the first spray component 111 from deforming; turn on the switch of the electrical box 5 to start the control box 3; set the control box 3 to control the first up-and-down moving drive assembly 113 and the second drive source 131, so that the waterproof cover 14 descends to Covering the mouth of the ceramic jar, the suction component 132, with one end equipped with a one-way valve 1321, extends to the bottom of the ceramic jar; the control box 3 controls the external water source drive source 21, the external water source filter device 22, the suction drive source 133, the suction filter device 134, and the first rotary drive assembly 112, so that the external water source flows through the inlet pipe 23 sequentially through the external water source filter device 22 and the external water source drive source 21, and after being divided by the three-way valve 4, the filtered and pressurized water jet is input into the first spray component 111 and the second spray component 12; the first spray component 111 has a three-dimensional nozzle 1111 at its cleaning end, which... Driven by a rotary drive assembly 112, the large ceramic jar rotates to achieve a thorough cleaning of its interior. Simultaneously, the suction component 132, driven by the suction drive source 133, sucks out the cleaning wastewater flowing to the bottom of the ceramic jar. The suction end of the suction component 132 is equipped with a one-way valve 1321 to prevent the suctioned wastewater from flowing back. The suctioned wastewater is filtered by the suction filter device 134 and then discharged. After cleaning, the control box 3 is set to raise the first spray component 111 and the suction component 132 until they are completely away from the ceramic jar. The above steps are repeated to move the first drive assembly 11 directly above another ceramic jar for cleaning.

[0069] In summary, this utility model effectively overcomes the various shortcomings of the prior art and has high industrial application value.

[0070] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.

Claims

1. A large-scale ceramic jar cleaning production line, characterized in that, The production line includes a cleaning device; the cleaning device includes a cleaning support (10), which is provided with a first spray component (11) for cleaning the inside of a large ceramic jar and a suction component (13) for draining wastewater from the inside of the large ceramic jar. The first spray assembly (11) includes a first spray member (111) and a first drive source; the first drive source is connected to the first spray member (111) and drives the first spray member (111) to rotate and / or move up and down; The suction assembly (13) includes a suction element (132) and a second drive source (131). The second drive source (131) is connected to the suction element (132) and drives the suction element (132) to move up and down.

2. The large-scale ceramic jar cleaning production line according to claim 1, characterized in that, The cleaning bracket (10) is also provided with a second spraying component (12) for cleaning the exterior of a large ceramic jar. The inlet of the second spraying component (12) is in fluid communication with an external water source. And / or, the first spraying element (111) includes a three-dimensional nozzle (1111); And / or, the first driving source includes a first rotary driving assembly (112) and / or a first up-and-down moving driving assembly (113); the first rotary driving assembly (112) is connected to the first spray member (111) to drive the first spray member (111) to rotate; the first rotary driving assembly (112) is disposed on the first up-and-down moving driving assembly (113) to drive the first rotary driving assembly (112) to move up and down; And / or, the first spray assembly (11) further includes a rotary joint that is in fluid communication with the inlet of the first spray member (111); And / or, the first spraying element (111) is a spraying rod, the length of which is 0.5 to 1 m; And / or, one end of the suction device (132) is provided with a one-way valve (1321), and the other end is used for sewage discharge.

3. The large-scale ceramic jar cleaning production line according to claim 2, characterized in that, The cleaning device also includes a waterproof cover (14) that matches the ceramic jar; And / or, the second spraying element (12) includes a 0-degree linear nozzle; And / or, the first up-and-down movement drive assembly (113) includes one or more of a manual lifting assembly, an electric lifting assembly, and a pneumatic lifting assembly; And / or, the second drive source (131) includes one or more of a manual lifting assembly, an electric lifting assembly, and a pneumatic lifting assembly.

4. The large-scale ceramic jar cleaning production line according to claim 3, characterized in that, The waterproof cover (14) is provided in a through hole for the suction device (132) to pass through; And / or, the first spraying element (111) is disposed through the waterproof cover (14), and the first spraying element (111) is fixedly connected to the waterproof cover (14).

5. The large-scale ceramic jar cleaning production line according to claim 2, characterized in that, The cleaning device also includes a suction drive source (133) and a suction pipe (17). The suction drive source (133) acts on the suction pipe (17), and the suction pipe (17) is in fluid communication with the outlet of the suction component (13). And / or, the cleaning device further includes a suction filter (134) in fluid communication with the suction pipe (17).

6. The large-scale ceramic jar cleaning production line according to claim 1, characterized in that, The cleaning bracket (10) is also provided with a rocker arm assembly, which is fixedly connected to the first spray assembly (11) to drive the first spray assembly (11) to move.

7. The large-scale ceramic jar cleaning production line according to claim 6, characterized in that, The rocker arm assembly includes a rocker arm portion (16) and a support portion (15) for supporting the rocker arm portion (16); The support part (15) includes a fixed part (151) and a rotating part (152) that are movably connected. The fixed part (151) is used to be fixedly connected to the cleaning bracket (10). The rotating part (152) is a self-rotating part. The rotating part (152) is fixedly connected to the rocker arm part (16) to drive the rocker arm part (16) to rotate. The rocker arm (16) includes a fixed arm (161), a telescopic arm (162), and a telescopic arm drive source (163). The fixed arm (161) is sleeved on the telescopic arm (162). The telescopic arm drive source (163) acts on one end of the telescopic arm (162) and the other end is connected to the first spray assembly (11) to drive the first spray assembly (11) to extend and retract.

8. The large-scale ceramic jar cleaning production line according to claim 1, characterized in that, The production line also includes a water inlet device for supplying water to the cleaning device. The water inlet device includes a water inlet bracket (20) and an external water source drive source (21) is provided on the water inlet bracket (20).

9. The large-scale ceramic jar cleaning production line according to claim 8, characterized in that, The water inlet bracket (20) is also provided with an external water source filter device (22) for filtering external water sources. The external water source filter device (22) is positioned in front of the external water source drive source (21). And / or, the bottom of the cleaning bracket (10) and / or the water inlet bracket (20) is provided with a number of guide wheels and / or casters.

10. The large-scale ceramic jar cleaning production line according to any one of claims 1 to 9, characterized in that, The production line also includes the water inlet pipe (23), the external water source filter device (22) and the external water source drive source (21) are sequentially arranged on the water inlet pipe (23); the water outlet of the water inlet pipe (23) is fluidly connected to the water inlet of the first spray member (111) and / or the water inlet of the second spray member (12).